[1] Goldstein R J, Eckert E R G, Burggraf F. Effects of hole geometry and density on threedimensional film cooling[J]. International Journal of Heat and Mass Transfer, 1974, 17(5): 595-607.
[2] Walters D K, Leylek J H. A detailed analysis of filmcooling physics: part I: streamwise injection with cylindrical holes[J]. Journal of Turbomachinery, 2000, 122(1): 102-112.
[3] Ligrani P M, Bell C M, Hamakawa H. Film cooling from shaped holes[J]. ASME Journal of Turbomachinery, 2000, 122(22): 224-232.
[4] Sargison J E, Guo S M, Oldfield M L G, et al. A converging slothole filmcooling geometry: part 2: transonic nozzle guide vane heat transfer and loss[J]. Journal of Turbomachinery, 2002, 124(3): 461-471.
[5] Han J C, Teng S. Effect of filmhole shape on turbineblade filmcooling performance[J]. ASME Journal of Thermophysics and Heat Transfer, 2001, 15(3): 257-265.
[6] Kim Y J, Kim S M. Influence of shaped injection holes on turbine blade leading edge film cooling[J]. International Journal of Heat and Mass Transfer, 2004, 47(2): 245-256.
[7] 韩昌, 李佳, 李雪英, 等. 基于PSP实验技术的双射流气膜冷却特性研究[J]. 航空动力学报, 2010, 25(12): 2770-2770.
[8] Goldstein R J, Jin P, Olson R L. Film cooling effectiveness and mass/heat transfer coefficient downstream of one row of discrete holes[J]. Journal of Turbomachinery, 1999, 121(2): 225-232.
[9] Nasir H, Ekkad S V, Acharya S. Effect of compound angle injection on flat surface film cooling with large streamwise injection angle[J]. Experimental Thermal and Fluid Science, 2001, 25(1): 23-29.
[10] 杨宽, 赵志军, 戴韧, 等. 基于红外热像技术的气膜冷却实验方法与应用[J]. 燃气轮机技术, 2010, 23(4): 8-12.
[1]谢凯,董若凌,施红辉,等.复合角及排列方式对平板气膜冷却效果影响的实验研究[J].浙江理工大学学报,2015,33-34(自科4):526.
XIE Kai,DONG Ruo ling,SHI Hong hui,et al.Experimental Investigations of Influence of Compound Angle andArrangement Mode on Flat Air Film Cooling Effect[J].Journal of Zhejiang Sci-Tech University,2015,33-34(自科4):526.